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双剑合璧:智能手机辅助比率荧光和纸质传感器用于食用麦芽中草甘膦的双模式检测。

Two swords combination: Smartphone-assisted ratiometric fluorescent and paper sensors for dual-mode detection of glyphosate in edible malt.

机构信息

School of Traditional Chinese Medicine, Capital Medical University, Beijing 100069, China.

State Key Laboratory of Southwestern Chinese Medicine Resources, Pharmacy College, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.

出版信息

Food Chem. 2024 Oct 1;454:139744. doi: 10.1016/j.foodchem.2024.139744. Epub 2024 May 20.

Abstract

The long-term and excessive use of glyphosate (GLY) in diverse matrices has caused serious hazard to the human and environment. However, the ultrasensitive detection of GLY still remains challenging. In this study, the smartphone-assisted dual-signal mode ratiometric fluorescent and paper sensors based on the red-emissive gold nanoclusters (R-AuNCs) and blue-emissive carbon dots (B-CDs) were ingeniously designed accurate and sensitive detection of GLY. Upon the presence of GLY, it would quench the fluorescence of B-CDs through dynamic quenching effect, and strengthen the fluorescence response of R-AuNCs due to aggregation-induced enhancement effect. Through calculating the GLY-induced fluorescence intensity ratio of B-CDs to R-AuNCs by using a fluorescence spectrophotometer, low to 0.218 μg/mL of GLY could be detected in lab in a wide concentration range of 0.3-12 μg/mL with high recovery of 94.7-103.1% in the spiked malt samples. The smartphone-assisted ratiometric fluorescent sensor achieved in the 96-well plate could monitor 0-11 μg/mL of GLY with satisfactory recovery of 94.1-107.0% in real edible malt matrices for high-throughput analysis. In addition, a portable smartphone-assisted ratiometric paper sensor established through directly depositing the combined B-CDs/R-AuNCs probes on the test strip could realize on-site measurement of 2-8 μg/mL of GLY with good linear relationship. This study provides new insights into developing the dual-signal ratiometric sensing platforms for the in-lab sensitive detection, high-throughput analysis, and on-site portable measurement of more trace contaminants in foods, clinical and environmental samples.

摘要

草甘膦(GLY)在多种基质中的长期和过度使用对人类和环境造成了严重危害。然而,对 GLY 的超灵敏检测仍然具有挑战性。在本研究中,智能手机辅助的双信号比率荧光和纸传感器基于红色发射金纳米簇(R-AuNCs)和蓝色发射碳点(B-CDs)被巧妙设计用于准确和灵敏地检测 GLY。在 GLY 存在的情况下,它会通过动态猝灭效应猝灭 B-CDs 的荧光,并由于聚集诱导增强效应增强 R-AuNCs 的荧光响应。通过使用荧光分光光度计计算 B-CDs 与 R-AuNCs 的 GLY 诱导荧光强度比,可以在实验室中检测到低至 0.218μg/mL 的 GLY,在 0.3-12μg/mL 的宽浓度范围内具有高回收率为 94.7-103.1%,在掺假麦芽样品中。智能手机辅助的比率荧光传感器在 96 孔板中实现了 0-11μg/mL 的 GLY 监测,在真实可食用麦芽基质中的回收率为 94.1-107.0%,可用于高通量分析。此外,通过直接将组合的 B-CDs/R-AuNCs 探针沉积在测试条上,建立了一种便携式智能手机辅助的比率纸传感器,可以实现 2-8μg/mL 的 GLY 的现场测量,具有良好的线性关系。本研究为开发用于食品、临床和环境样品中痕量污染物的实验室敏感检测、高通量分析和现场便携式测量的双信号比率传感平台提供了新的见解。

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